TGF-β2-induced ANGPTL4 expression promotes tumor progression and osteoclast differentiation in giant cell tumor of bone

被引:18
作者
Li, Bo [1 ]
Qian, Ming [1 ]
Cao, Hao [2 ]
Jia, Qi [1 ]
Wu, Zhipeng [1 ]
Yang, Xinghai [1 ]
Ma, Tianyi [3 ]
Wei, Haifeng [1 ]
Chen, Tianrui [1 ]
Xiao, Jianru [1 ]
机构
[1] Second Mil Med Univ, Changzheng Hosp, Dept Bone Tumor Surg, Shanghai, Peoples R China
[2] Shenyang Pharmaceut Univ, Sch Life Sci & Biopharmaceut, Shenyang, Liaoning, Peoples R China
[3] Second Mil Med Univ, Fac Psychol & Mental Hlth, Shanghai, Peoples R China
基金
中国国家自然科学基金;
关键词
giant cell tumor of bone; ANGPTL4; osteoclast differentiation; cell proliferation; angiogenesis; ANGIOPOIETIN-LIKE; 4; TGF-BETA; VASCULAR-PERMEABILITY; STROMAL CELL; TARGET GENE; INHIBITION; SPINE; ANGIOGENESIS; METASTASIS; HYPOXIA;
D O I
10.18632/oncotarget.18629
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Although emerging studies have implicated that Aiopoietin-like 4 Protein (ANGPTL4) is related to the aggressiveness and metastasis of many tumors, the role of ANGPLT4 in giant cell tumor (GCT) of bone was rarely investigated. The mechanism of ANGPLT4 in tumor-induced osteoclastogenesis still remains unclear. In this study, we first demonstrated that ANGPTL4 was highly expressed in GCT compared to normal tissues, while we showed that TGF-beta 2 released by osteoclasts induced bone resorption could increase the expression of ANGPTL4 in GCTSCs. By using the luciferase reporter assay, we found that two downstreams of TGF-beta 2, Smad3 and Smad4, could directly activate the promoter of ANGPTL4, which might explain the mechanism of TGF-beta 2induced ANGPLT4 expression. Moreover, knockout of ANGPTL4 by TALENs in GCTSCs inhibited tumor growth, angiogenesis and osteoclastogenesis in GCT in vitro. By using the chick chorio-allantoic membrane (CAM) models, we further showed that inhibition of ANGPTL4 suppressed tumor growth and giant cell formation in vivo. In addition, some new pathways involved in ANGPTL4 application were identified through microarray assay, which may partly explain the mechanism of ANGPTL4 in GCT. Taken together, our study for the first time identified the role of ANGPLT4 in GCT of bone, which may provide a new target for the diagnosis and treatment of GCT.
引用
收藏
页码:54966 / 54977
页数:12
相关论文
共 45 条
[1]   Giant cell tumor of bone: treatment and outcome of 214 cases [J].
Balke, Maurice ;
Schremper, Laura ;
Gebert, Carsten ;
Ahrens, Helmut ;
Streitbuerger, Arne ;
Koehler, Gabriele ;
Hardes, Jendrik ;
Gosheger, Georg .
JOURNAL OF CANCER RESEARCH AND CLINICAL ONCOLOGY, 2008, 134 (09) :969-978
[2]   A short-term in vivo model for giant cell tumor of bone [J].
Balke, Maurice ;
Neumann, Anna ;
Szuhai, Karoly ;
Agelopoulos, Konstantin ;
August, Christian ;
Gosheger, Georg ;
Hogendoorn, Pancras C. W. ;
Athanasou, Nick ;
Buerger, Horst ;
Hagedorn, Martin .
BMC CANCER, 2011, 11
[3]   RANK/OPG ratio of expression in primary clear-cell renal cell carcinoma is associated with bone metastasis and prognosis in patients treated with anti-VEGFR-TKIs [J].
Beuselinck, B. ;
Jean-Baptiste, J. ;
Couchy, G. ;
Job, S. ;
De Reynies, A. ;
Wolter, P. ;
Theodore, C. ;
Gravis, G. ;
Rousseau, B. ;
Albiges, L. ;
Joniau, S. ;
Verkarre, V. ;
Lerut, E. ;
Patard, J. J. ;
Schoffski, P. ;
Mejean, A. ;
Elaidi, R. ;
Oudard, S. ;
Zucman-Rossi, J. .
BRITISH JOURNAL OF CANCER, 2015, 113 (09) :1313-1322
[4]   Giant Cell Tumor of the Mobile Spine A Review of 49 Cases [J].
Boriani, Stefano ;
Bandiera, Stefano ;
Casadei, Roberto ;
Boriani, Luca ;
Donthineni, Rakesh ;
Gasbarrini, Alessandro ;
Pignotti, Elettra ;
Biagini, Roberto ;
Schwab, Joseph H. .
SPINE, 2012, 37 (01) :E37-E45
[5]   LIGHT/TNFSF14 increases osteoclastogenesis and decreases osteoblastogenesis in multiple myeloma-bone disease [J].
Brunetti, Giacomina ;
Rizzi, Rita ;
Oranger, Angela ;
Gigante, Isabella ;
Mori, Giorgio ;
Taurino, Grazia ;
Mongelli, Teresa ;
Colaianni, Graziana ;
Di Benedetto, Adriana ;
Tamma, Roberto ;
Ingravallo, Giuseppe ;
Napoli, Anna ;
Faienza, Maria Felicia ;
Mestice, Anna ;
Curci, Paola ;
Specchia, Giorgina ;
Colucci, Silvia ;
Grano, Maria .
ONCOTARGET, 2014, 5 (24) :12950-12967
[6]   Hypoxia-inducible factor-1 alpha-dependent induction of FoxP3 drives regulatory T-cell abundance and function during inflammatory hypoxia of the mucosa [J].
Clambey, Eric T. ;
McNamee, Eoin N. ;
Westrich, Joseph A. ;
Glover, Louise E. ;
Campbell, Eric L. ;
Jedlicka, Paul ;
de Zoeten, Edwin F. ;
Cambier, John C. ;
Stenmark, Kurt R. ;
Colgan, Sean P. ;
Eltzschig, Holger K. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2012, 109 (41) :E2784-E2793
[7]   Proteolysis of latent transforming growth factor-β (TGF-β)-binding protein-1 by osteoclasts -: A cellular mechanism for release of TGF-β from bone matrix [J].
Dallas, SL ;
Rosser, JL ;
Mundy, GR ;
Bonewald, LF .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (24) :21352-21360
[8]   α1-Antitrypsin Combines with Plasma Fatty Acids and Induces Angiopoietin-like Protein 4 Expression [J].
Frenzel, Eileen ;
Wrenger, Sabine ;
Bruegger, Britta ;
Salipalli, Sandeep ;
Immenschuh, Stephan ;
Aggarwal, Nupur ;
Lichtinghagen, Ralf ;
Mahadeva, Ravi ;
Marcondes, A. Mario Q. ;
Dinarello, Charles A. ;
Welte, Tobias ;
Janciauskiene, Sabina .
JOURNAL OF IMMUNOLOGY, 2015, 195 (08) :3605-3616
[9]   Angiopoietin-like 4 prevents metastasis through inhibition of vascular permeability and tumor cell motility and invasiveness [J].
Galaup, Ariane ;
Cazes, Aurelie ;
Le Jan, Sebastien ;
Philippe, Josette ;
Connault, Elisabeth ;
Le Coz, Emmanuelle ;
Mekid, Halima ;
Mir, Lluis M. ;
Opolon, Paule ;
Corvol, Pierre ;
Monnot, Catherine ;
Germain, Stephane .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2006, 103 (49) :18721-18726
[10]   Proteases and interleukin-6 gene analysis in 92 giant cell tumors of bone [J].
Gamberi, G ;
Benassi, MS ;
Ragazzini, P ;
Pazzaglia, L ;
Ponticelli, F ;
Ferrari, C ;
Balladelli, A ;
Mercuri, M ;
Gigli, M ;
Bertoni, F ;
Picci, P .
ANNALS OF ONCOLOGY, 2004, 15 (03) :498-503